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Articles

Induction and characterization of induced tetraploid, mixoploid and control diploid teak seedlings (Tectona grandis L.f.) from shoot cultures treated with oryzalin*

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Pages 142-154 | Received 15 Nov 2023, Accepted 22 Feb 2024, Published online: 09 Apr 2024

References

  • Ahmad F, Tambunan IR, Witjaksono. 2009. Ukuran stomata sebagai pre screening dalam identifikasi ploidi pisang dengan flow cytometer [Stomatal size as a pre-screening in the identification of banana ploidy using a flow cytometer]. Seminar Nasional Biologi XX dan Kongres Perhimpunan Biologi Indonesia XIV, Malang. 238–242. Indonesian
  • Banyai W, Sangthong R, Karaket N, Inthima P, Mii M, Supaibulwatana K. 2010. Overproduction of artimisinin in tetraploid Artemisia annua L. Plant Biotechnol. 27(5):427–433. doi: 10.5511/plantbiotechnology.10.0726a.
  • Barandalla L, Ritter E, Ruiz De Galarreta JI. 2007. Oryzalin treatment of potato diploids yields tetraploid and chimeric plants from which euploids could be derived by callus induction. Potato Res. 49(2):143–154. doi: 10.1007/s11540-006-9014-1.
  • Cai X, Cao Z, Xu S, Deng Z. 2015. Induction, regeneration and characterization of tetraploids and variants in ‘Tapestry’ caladium. Plant Cell Tiss Organ Cult. 120(2):689–700. doi: 10.1007/s11240-014-0636-8.
  • Chen WH, Tang CY, Kao YL. 2009. Ploidy doubling by in vitro culture of excised protocorms or protocorm-like bodies in Phalaenopsis species. Plant Cell Tiss Organ Cult. 98(2):229–238. doi: 10.1007/s11240-009-9557-3.
  • Cires E, Cuesta C, Fernández Casado MÁ, Nava HS, Vázquez VM, Fernández Prieto JA. 2011. Isolation of plant nuclei suitable for flow cytometry from species with extremely mucilaginous compounds: an example in the genus Viola L. (Violaceae). Anal Jard Bot Madr. 68(2):139–154. doi: 10.3989/ajbm.2273.
  • Dahanayake N, Chen XL, Zhao FC, Yang YC, Wu H. 2011. Separation of tetraploid and diploid plant from chimeras in in-vitro cultures of purple coneflower (Echinacea purpurea L). Trop Agric Res & Ext. 13(1):11. doi: 10.4038/tare.v13i1.3131.
  • Dhooghe E, Denis S, Eeckhaut T, Reheul D, Van Labeke MC. 2009. In vitro induction of tetraploids in ornamental Ranunculus. Euphytica. 168(1):33–40. doi: 10.1007/s10681-008-9876-1.
  • Diallo A, Gbeassor M, Vovor A, Eklu-Gadegbeku K, Aklikokou K, Agbonon A, Abena AA, De Souza C, Akpagana K. 2008. Effect of Tectona grandis on phenylhydrazine-induced anaemia in rats. Fitoterapia. 79(5):332–336. doi: 10.1016/j.fitote.2008.02.005.
  • Fauzan YSA, Supriyanto S, Tajuddin T. 2017. Growth and morphological changes as an early indication of in vitro ploidization of teak (Tectona grandis L.f). Jurpenhuttanaman. 14(2):128–139. doi: 10.20886/jpht.2017.14.2.128-139.
  • Fukui K. 1996. Plant chromosomes at mitosis. In: Fukui K, Nakayama S, editors. Plant chromosome: laboratory methods. Boca Raton (BR): CRC Press; p. 1–17. doi: 10.1201/9780203743195.
  • Gallone A, Hunter A, Douglas GC. 2014. Polyploid induction in vitro using colchicine and oryzalin on Hebe ‘Oratia Beauty’: production and characterization of the vegetative traits. Sci Hortic. 179:59–66. doi: 10.1016/j.scienta.2014.09.014.
  • Ganga M, Chezhiyan N. 2002. Influence of the antimitotic agents colchicine and oryzalin on in vitro regeneration and chromosome doubling of diploid bananas (Musa spp.)J Hortic Sci Biotechnol. 77(5):572–575. doi: 10.1080/14620316.2002.11511540.
  • Goh DKS, Monteuuis O. 2012. Behaviour of the “YSG Biotech TG1-8” teak clones under various site conditions: first observations. Bois for Trop. 311(311):5–19. http://www.ysgbiotech.com. doi: 10.19182/bft2012.311.a20511.
  • Greilhuber J, Temsch EM, Loureiro JCM. 2007. Nuclear DNA content measurement. In: Dolezel J, Greilhuber J, Suda J, editors. Flow cytometry with plant cells. Weinheim: Wiley-VCH Verlag GmbH & Co. KGaA; p. 67–101. doi: 10.1002/9783527610921.ch4.
  • Guerra M, Pedrosa A, Silva AEBE, Cornélio MTM, Santos K, Soares Filho WS. 1997. Chromosome number and secondary constriction variation in 51 accessions of a citrus germplasm bank. Braz J Genet. 20(3):489–496. doi: 10.1590/S0100-84551997000300021.
  • Gupta PK, Nadgir AL, Mascarenhas AF, Jagannathan V. 1980. Tissue culture of forest trees: clonal multiplication of Tectona grandis L. (teak) by tissue culture. Plant Sci Lett. 17(3):259–268. doi: 10.1016/0304-4211(80)90156-X.
  • Hedegart T, Eigaard J. 1965. Chromosome number of teak (Tectona grandis L.f.). Hørsholm: the Arboretum.
  • Kanchanapoom K, Koarapatchaikul K. 2012. In vitro induction of tetraploid plants from callus cultures of diploid bananas (Musa acuminata, AA group) ‘KluaiLeb Mu Nang’ and ‘Kluai Sa. Euphytica. 183(1):111–117. doi: 10.1007/s10681-011-0516-9.
  • Kermani MJ, Sarasan V, Roberts AV, Yokoya K, Wentworth J, Sieber VK. 2003. Oryzalin-induced chromosome doubling in Rosa and its effect on plant morphology and pollen viability. Theor Appl Genet. 107(7):1195–1200. doi: 10.1007/s00122-003-1374-1.
  • Kertadikara A, Prat D. 1995. Genetic structure and mating system in teak (Tectona grandis L.f.) provenances. Silvae Genet. 44:2–3.
  • Kongmeesup I, Boonyanuphap J. 2019. Estimation of carbon offset for teak plantation in lower northern Thailand. Songklanakarin J Sci Technol. 41(3):580–586. doi: 10.14456/sjst-psu.2019.76.
  • Lam HK, Harbard J, Koutoulis A. 2014. Tetraploid induction of Acacia crassicarpa A. Cunn. Ex Benth. using colchicine and oryzalin. J Trop for Sci. 26(3):347–354. https://www.researchgate.net/publication/266798051.
  • Li W, Zhang Q, Wang S, Langham MA, Singh D, Bowden RL, Xu SS. 2019. Development and characterization of wheat–sea wheatgrass (Thinopyrum junceiforme) amphiploids for biotic stress resistance and abiotic stress tolerance. Theor Appl Genet. 132(1):163–175. doi: 10.1007/s00122-018-3205-4.
  • Madani H, Escrich A, Hosseini B, Sanchez-Muñoz R, Khojasteh A, Palazon J. 2021. Effect of polyploidy induction on natural metabolite production in medicinal plants. Biomolecules. 11(6):899. doi: 10.3390/biom11060899.
  • Manton I. 1950. Problems of cytology and evolution in the Pteridophyta. London: Cambridge University Press. doi: 10.5962/bhl.title.4667.
  • Meyer EM, Touchell DH, Ranney TG. 2009. In vitro shoot regeneration and polyploid induction from leaves of Hypericum species. horts. 44(7):1957–1961. doi: 10.21273/HORTSCI.44.7.1957.
  • Murashige T, Skoog F. 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plant. 15(3):473–497. doi: 10.1111/j.1399-3054.1962.tb08052.x.
  • Nidavani RB. 2014. Teak (Tectona grandis LINN): a renowed timber plant with potential medicinal values. Int J Pharm Pharm Sci. 6(1):48–54.
  • Oates KM, Ranney TG, Touchell DH. 2012. Influence of induced polyploidy on fertility and morphology of Rudbeckia species and hybrids. horts. 47(9):1217–1221. doi: 10.21273/HORTSCI.47.9.1217.
  • Palanisamy K, Hegde M, Yi JS. 2009. Teak (Tectona grandis Linn.f.): a renowned commercial timber species. J for Sci. 25(1):1–24. https://www.researchgate.net/publication/264174561.
  • Ahmad Parlaongan, Supriyanto, Arum Sekar Wulandari. 2022. Effects of gamma ray irradiation to induce genetic variability of teak planlets (Tectona grandis Linn.f.). J. Sylva Indonesiana. 5(01):10–21. doi: 10.32734/jsi.v5i01.6166.
  • Pierozzi NI, Rossetto CJ. 2011. Chromosome characterization of two varieties of Mangifera indica L. Rev Bras Frutic. 33(spe1):546–551. doi: 10.1590/S0100-29452011000500074.
  • Poerba YS, Ahmad F, Handayani T, Witjaksono. 2014. Induksidan karakterisasi pisang mas lumut tetraploid [induction and characterization of tetraploid pisang mas lumut]. J Biol Indones. 10(2):191–200. Indonesian http://ppvt.setjen.deptan.go.id/.
  • Poerba Y, Martanti D, Handayani T, Witjaksono. 2019a. Morphology and reproductive function of induced autotetraploid banana by chromosome doubling. SABRAO J Breed Genet. 51(2):175–190.
  • Poerba YS, Martanti D, Handayani, T, W., Witjaksono. 2019b. Induction of banana autotetraploids “Klutuk Sukun” and their reproductive function for producing triploid hybrids. Asian J of Plant Sciences. 18(2):91–100. doi: 10.3923/ajps.2019.91.100.
  • Pradeepkumar T. 2011. Characterization of M1 generation of polyploids in watermelon variety “Sugar Baby. Rep-Cucurbit Genet Coop. 33(34):44–46.
  • Pramasari D, Wahyuni I, Adi DS, Amin Y, Darmawan T, Dwiyanto W. 2014. Effect of age on chemical component of platinum teak wood – a fast growing teak wood from LIPI. 211–216. https://www.researchgate.net/publication/279551875.
  • Praptosuwiryo T, Mumpuni M. 2018. Chromosome numbers of some species of Pteris (Pteridaceae) in Java, Indonesia. Biodiversitas. 19(6):2118–2126. doi: 10.13057/biodiv/d190618.
  • Rahayu D. 2014. [Evaluasi pertumbuhan dan karakteristik tanaman jati yang diberi perlakuan kolkisin [Evaluation of growth and characteristics of teak plants treated with colchicine]. [[master’s thesis]]. Yogyakarta: Universitas Gadjah Mada. Indonesian.]
  • Rahayu EMD, Sukma D, Syukur, M, R. 2016. Induksi poliploidi Phalaenopsis amabilis (L.) Blume dan Phalaenopsis amboinensis J.J. Smith dengan kolkisin dalam kultur in vitro [Induction of polyploidy in Phalaenopsis amabilis (L.) Blume and Phalaenopsis amboinensis J.J. Smith with colchicine in in vitro culture]. J Agron Indonesia. 43(3):219. Indonesian. doi: 10.24831/jai.v43i3.11248.
  • Ramulu K, Verhoeven HA, Dijkhuis P. 1991. Mitotic blocking, micronucleation, and chromosome doubling by oryzalin, amiprophos-methyl, and colchicine in potato. Protoplasma. 160(2–3):65–71. doi: 10.1007/BF01539957.
  • Ridwan R, Handayani T, Riastiwi I, Witjaksono W., Witjaksono. Ridwan. 2018. Tetraploid teak seedling was more tolerant to drought stress than its diploid seedling. JPKW. 7(1):1–11. doi: 10.18330/jwallacea.2018.vol7iss1pp01-11.
  • Ridwan R, Witjaksono W. 2020. Induction of autotetraploid moringa plant (Moringa oleifera) using oryzalin. Biodiversitas. 21(9):4086–4093. doi: 10.13057/biodiv/d210920.
  • Setyowati M, Sulistyaningsih E, Purwantoro A. 2013. Induksi poliploidi dengan kolkisisina pada kultur meristem batang Bawang Wakegi (Allium x wakegi Araki) [Induction of polyploidy with colchicine in shoot meristem culture of Wakegi Onion (Allium x wakegi Araki).] Ilmu Pertanian. 16(1):58–76. Indonesian doi: 10.22146/ipas.2526.
  • Shrestha MK, Volkaert H, Van Der Straeten D. 2005. Assessment of genetic diversity in Tectona grandis using amplified fragment length polymorphism markers. Can J for Res. 35(4):1017–1022. doi: 10.1139/x05-033.
  • Silva P, Callegari-Jacques S, Bodanese-Zanettini MH. 2000. Induction and identification of polyploids in Cattleya intermedia Lindl. (Orchidaceae) by in vitro techniques. Cienc Rural. 30(1):105–111. doi: 10.1590/S0103-84782000000100017.
  • Srinivasan R, Selvam GG, Karthikeyan K, Chandran C, Kulothungan S, Govindasamy C. 2012. In vitro propagation of shoot and callus culture of Tectona grandis (L.). Glob J Biotechnol Biochem. 7(1):26–29. doi: 10.5829/idosi.gjbb.2012.7.1.06.
  • Tang ZQ, Chen DL, Song ZJ, He YC, Cai DT. 2010. In vitro induction and identification of tetraploid plants of Paulownia tomentosa. Plant Cell Tiss Organ Cult. 102(2):213–220. doi: 10.1007/s11240-010-9724-6.
  • Tavan M, Mirjalili MH, Karimzadeh G. 2015. In vitro polyploidy induction: changes in morphological, anatomical, and phytochemical characteristics of Thymus persicus (Lamiaceae). Plant Cell Tiss Organ Cult. 122(3):573–583. doi: 10.1007/s11240-015-0789-0.
  • Van Duren M, Morpurgo R, Dolezel J, Afza R. 1996. Induction and verification of autotetraploids in diploid banana (Musa acuminata) by in vitro techniques. Euphytica. 88(1):25–34. doi: 10.1007/BF00029262.
  • Vleugels T, Cnops G, Roldán-Ruiz I. 2014. Improving seed yield in red clover through marker assisted parentage analysis. Euphytica. 200(2):305–320. doi: 10.1007/s10681-014-1188-z.
  • Wulandari AS, Wijaya TR. 2015. Analisis kromosom tanaman jati (Tectona grandis L.f.) dengan metode perwarnaan [Chromosome analysis of teak plants (Tectona grandis L.f.) using staining methods]. Jurnal Silvikultur Tropika. 6(1):49–54. doi: 10.29244/j-siltrop.6.1.%25p.
  • Xu C, Zhang Y, Han Q, Kang X. 2020. Molecular mechanism of slow vegetative growth in populus tetraploid. Genes (Basel). 11(12):1417. doi: 10.3390/genes11121417.
  • Xu J, Jin J, Zhao H, Li K. 2019. Drought stress tolerance analysis of Populus ussuriensis clones with different ploidies. J for Res. 30(4):1267–1275. doi: 10.1007/s11676-018-0729-z.
  • Yasodha R, Vasudeva R, Balakrishnan S, Sakthi AR, Abel N, Binai N, Rajashekar B, Bachpai VKW, Pillai C, Dev SA. 2018. Draft genome of a high value tropical timber tree, teak (Tectona grandis L.f.): insights into SSR diversity, phylogeny, and conservation. DNA Res. 25(4):409–419. doi: 10.1093/dnares/dsy013.
  • Zhang Z, Zhang Y, Di Z, Zhang R, Mu Y, Sun T, Tian Z, Lu Y, Zheng J. 2023. Tetraploid induction with leaf morphology and sunburn variation in Sorbus pohuashanensis (Hance) Hedl. Forests. 14(8):1589. doi: 10.3390/f14081589.